Polygonatum odoratum (Mill.) Druce Transcriptome or Gene expression
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The transcriptome of rhizome under continuous cropping and first cropping
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2025-06-25
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Additional file 9: of Differential proteomic analysis of replanted Rehmannia glutinosa roots by iTRAQ reveals molecular mechanisms for formation of replant disease
Unique peptide sequences identified in the present study. (XLSX 2281Â kb)
NIAID Data Ecosystem40
Urochloa fusca LBJWC-52 Transcriptome - UF_-N_Rhizome-1. Urochloa fusca cultivar:LBJWC-52
Urochloa fusca Transcriptome. Sample from Ground rhizome tissue grown under conditions of Nitrogen starvation
NIAID Data Ecosystem30
Achyranthes bidentata cultivar:Achyranthes bidentata cultivar Number 1 Raw sequence reads. Achyranthes bidentata cultivar:Achyranthes bidentata cultivar Number 1
To identify candidate genes responsible for the replanting gain phenomenon, RNA-seq libraries were constructed from mRNA extracted from the roots of first year planting (normal growth, NG) and second
NIAID Data Ecosystem20
Transcriptome/Degradome-Wide Identification of R. glutinosa miRNAs and Their Targets: The Role of miRNA Activity in the Replanting Disease
Rehmannia glutinosa, a traditional Chinese medicine herb, is unable to grow normally in a soil where the same species has recently been cultivated. The biological basis of this so called “replanting d
NIAID Data Ecosystem30
Table4.DOCX
Panax notoginseng is a highly valuable medicinal herb, but its culture is strongly hindered by replant failure, mainly due to autotoxicity. Deciphering the response mechanisms of plants to autotoxins
NIAID Data Ecosystem20



